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Journal ArticleDOI

Deepwater source variations during the last climatic cycle and their impact on the global deepwater circulation

TLDR
In this paper, a detailed reconstruction of the geographic distribution of ∂13C in benthic foraminifera in the Atlantic Ocean during the last glacial maximum was presented.
Abstract
The degree of similarity of the ∂13C records of the planktonic foraminiferal species N. pachyderma and of the benthic foraminiferal genus Cibicides in the high-latitude basins of the world ocean is used as an indicator of the presence of deepwater sources during the last climatic cycle. Whereas continuous formation of deep water is recognized in the southern ocean, the Norwegian Sea stopped acting as a sink for surface water during isotope stage 4 and the remainder of the last glaciation. However, deep water formed in the north Atlantic south of the Norwegian Sea during the last climatic cycle as early as isotope substage 5d, and this area was also the only active northern source during stages 4–2. A detailed reconstruction of the geographic distribution of ∂13C in benthic foraminifera in the Atlantic Ocean during the last glacial maximum shows that the most important deepwater mass originated from the southern ocean, whereas the Glacial North Atlantic Deep Water cannot be traced south of 40°N. At shallower depth an oxygenated 13C rich Intermediate Water mass extended from 45°N to 15°S. In the Pacific Ocean a ventilation higher than the modern one was also found in open ocean in the depth range 700–2600 m and is best explained by stronger formation of Intermediate Water in high northern latitudes.

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Seasonally ice free glacial nordic seas without deep water ventilation

TL;DR: In this paper, a modified scenario is presented based on parallel ocean circulation modelling results from the GFDL primitive equation model and a planetary geostrophic model and it is suggested that the glacial Nordic Seas were at least seasonally ice free, but it is observed that there was never deep water formation from the surface; rather it occurred only in the North Atlantic south of 40 degrees-50 degrees N.
Journal ArticleDOI

Simulation of the ice age atmosphere - January and July means -

TL;DR: In this article, a simulation of the atmospheric state under ice age conditions (18,000 years before present) is presented, restricted to January and July means in order to demonstrate the glacial changes in summer and winter.
Journal ArticleDOI

Hydrological variability in Florida Straits during Marine Isotope Stage 5 cold events

TL;DR: In this article, the authors present temperature and salinity records from a Florida Straits core by combining 18O and Mg/Ca analyses on surface (Globigerinoides ruber, white) and deep-dwelling organisms covering MIS 5 in high resolution.
References
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Journal ArticleDOI

The distribution of 13C of ΣCO2 in the world oceans

TL;DR: In this article, the results from 2252 samples from 107 hydrographic stations are presented as north-south vertical (depth) sections with δ13C contoured at intervals of 0.5−0.0075·AOU.
Journal ArticleDOI

North Atlantic thermohaline circulation during the past 20,000 years linked to high-latitude surface temperature

TL;DR: In this paper, the authors show that during a surface cooling event 10,000 to 12,000 years ago, higher Cd/Ca and lower 13C/12C ratios are observed in benthic foraminifera shells from rapidly accumulating western North Atlantic sediments.
Journal ArticleDOI

Comparison of Atlantic and Pacific paleochemical records for the last 215,000 years : changes in deep ocean circulation and chemical inventories

TL;DR: In this article, detailed Cd/Ca and δ 13 C data have been obtained for benthic foraminifera from western North Atlantic and Equatorial Pacific sediment cores, which indicate that bottom waters overlying the Atlantic site have been nutrient depleted relative to those at the Pacific site over the last 215,000 years.
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